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首页> 外文期刊>The Science of the Total Environment >Linear and nonlinear behavior of crosslinked chitosan/N-doped graphene quantum dot nanocomposite films in cadmium cation uptake
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Linear and nonlinear behavior of crosslinked chitosan/N-doped graphene quantum dot nanocomposite films in cadmium cation uptake

机译:交联的壳聚糖/ N掺杂石墨烯量子点纳米复合薄膜在镉阳离子吸收中的线性和非线性行为

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In this research, crosslinked nanocomposite (NC) films involving chitosan (CS) and various percentages of nitrogen-doped graphene quantum dot (NGQD) were prepared via ultrasonic acoustic accompanied by adding glutaraldehyde as a crosslinking agent (henceforth nominated as CCS/NGQD NC). The objective of this study is the design of a safe adsorbent of CCS/NGQD NC under easy and low-cost conditions to investigate the mechanisms of Cd(II) ion sorption and find an appropriate model for the kinetics of removal. By comparing adsorption ability of CCS/NGQD NC films 2,5 and 8 wt% under the same conditions, the CCS NC film with 5 wt% of NGQD was selected as the best mass ratio to investigate the adsorption process. To understand the nature of the sorption behavior, the experimental data were used to calculate pseudo-first-order, pseudo-second-order, and intra-particle diffusion kinetic models, and various isotherm models in linear and nonlinear regression. In addition, some error functions were applied to detect, either linear or nonlinear model is suitable to examine the experimental data and prevent any huge mistakes. The linear Freundlich equation well describes the uptake of Cd(II) ion by CCS film and CCS/NGQD NC film 5 wt%. Based on linear Langmuir, the maximum adsorption capacities of CCS film and CCS/NGQD NC film 5 wt% were 34.46 and 35.00 mg.g(-1), respectively. Kinetic analysis indicates that the mechanism of removal is described by nonlinear pseudo-second order model for CCS film and linear pseudosecond order model for the CCS/NGQD NC film 5 wt%. Also, thermodynamic parameters were analyzed in different temperatures. The obtained thermodynamic values prove that Cd(II) ion adsorption on both adsorbents is feasible, spontaneous and endothermic. (C) 2019 Elsevier B.V. All rights reserved.
机译:在这项研究中,通过超声声结合戊二醛作为交联剂,制备了涉及壳聚糖(CS)和不同百分比的氮掺杂石墨烯量子点(NGQD)的交联纳米复合膜(以下简称为CCS / NGQD NC)。 。这项研究的目的是设计一种在简单和低成本条件下安全的CCS / NGQD NC吸附剂,以研究Cd(II)离子吸附的机理并找到合适的去除动力学模型。通过比较相同条件下CCS / NGQD NC薄膜2,5和8 wt%的吸附能力,选择含有5 wt%NGQD的CCS NC薄膜作为最佳质量比研究吸附过程。为了了解吸附行为的本质,​​使用实验数据计算了伪一级,伪二级和粒子内扩散动力学模型以及线性和非线性回归中的各种等温线模型。此外,还应用了一些误差函数来检测线性模型或非线性模型,以检查实验数据并防止任何大的误差。线性Freundlich方程很好地描述了CCS膜和5 wt%的CCS / NGQD NC膜对Cd(II)离子的吸收。基于线性Langmuir,CCS膜和5 wt%CCS / NGQD NC膜的最大吸附容量分别为34.46和35.00 mg.g(-1)。动力学分析表明,去除机理由CCS膜的非线性伪二级模型和CCS / NGQD NC膜5 wt%的线性伪二级模型描述。同样,在不同温度下分析热力学参数。所获得的热力学值证明,Cd(II)离子在两种吸附剂上的吸附都是可行,自发和吸热的。 (C)2019 Elsevier B.V.保留所有权利。

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